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A method for the generation of 3D representative models of granular based materials

机译:一种生成粒状基础材料的3D代表模型的方法

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The morphology of many naturally occurring and man-made materials at different length scales can be modelled using the packing of correspondingly shaped and sized particles. The mechanical behaviour of this vast category of materials - which includes granular media, particle reinforced materials and foams - depends strongly upon the shape and size distribution of the particles. This paper presents a method for the generation and packing of arbitrarily shaped polyhedral particles. The algorithm for the generation of the particles is based on the Voronoi tessellation technique, whilst the packing is performed using a geometrical approach, which guarantees the non-overlapping of the bodies without relying upon any, otherwise typically computationally expensive, contact detection and interaction algorithm. The introduction of three geometrical parameters allows to control the shape, size and spacial density of the polyhedral particles, which are used to build numerical models representative of densely packed granular assemblies, granular reinforced materials and closed-cell foams. Copyright (C) 2017 John Wiley & Sons, Ltd.
机译:可以使用相应形状和尺寸的颗粒的包装来建模不同长度尺度的许多天然存在的和人造材料的形态。这种巨大的材料的力学行为 - 包括粒状介质,颗粒增强材料和泡沫 - 颗粒的形状和尺寸分布在颗粒的形状和尺寸分布上。本文介绍了任意形状多面体颗粒的产生和包装的方法。用于生成粒子的算法基于Voronoi曲面细分技术,而使用几何方法进行填料,其保证身体的非重叠而不依赖于任何,否则通常计算昂贵,接触检测和交互算法。三种几何参数的引入允许控制多面体颗粒的形状,尺寸和空间密度,用于构建代表密集包装的颗粒组件,颗粒增强材料和闭孔泡沫的数值模型。版权所有(c)2017 John Wiley&Sons,Ltd。

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